Zhang Jianhua, Li Yiru, Wang Bo, Hu Huaying, Wei Bin, Yang Lianqiao
Key Laboratory of Advanced Display and System Applications, Ministry of Education, Shanghai University, Yanchang Road 149, Shanghai 200072, China.
Micromachines (Basel). 2019 Aug 3;10(8):517. doi: 10.3390/mi10080517.
The development of silver nanowire electrodes is always limited due to some disadvantages, such as roughness, oxidative properties, and other disadvantages. In this research, a capillary-welded silver nanowire/graphene composite film was used as an electrode for organic light-emitting diode (OLED) devices. As an encapsulation layer, graphene reduced the surface roughness and the oxidation probability of silver nanowires. The composite electrode showed an excellent transmittance of 91.5% with low sheet resistant of 26.4 ohm/sq. The devices with the silver nanowire/graphene composite electrode emitted green electroluminescence at 516 nm, and the turn-on voltage was about 3.8 V. The maximum brightness was 50810 cd/cm, which is higher than the indium tin oxide-based (ITO-based) devices with the same configuration. Finally, it was proved that the silver nanowire/graphene composite electrodes possessed better heat dissipation than the ITO-based ones under energization. In summary, it means that this novel silver nanowires/graphene electrode has great potential in OLED device applications.
由于存在诸如粗糙度、氧化特性等一些缺点,银纳米线电极的发展一直受到限制。在本研究中,一种毛细管焊接的银纳米线/石墨烯复合薄膜被用作有机发光二极管(OLED)器件的电极。作为封装层,石墨烯降低了银纳米线的表面粗糙度和氧化概率。该复合电极显示出91.5%的优异透过率以及26.4欧姆/平方的低方块电阻。具有银纳米线/石墨烯复合电极的器件在516纳米处发出绿色电致发光,开启电压约为3.8伏。最大亮度为50810坎德拉/平方厘米,高于具有相同配置的基于氧化铟锡(ITO)的器件。最后,证明了银纳米线/石墨烯复合电极在通电情况下比ITO基电极具有更好的散热性能。总之,这意味着这种新型银纳米线/石墨烯电极在OLED器件应用中具有巨大潜力。